The equipotential contours in a region of space that contains an electric field are shown in the figure at evenly spaced voltage intervals, Vo = 110 V. A point charge, q = 390 μC, is placed in the electric field and moved from one labeled point to another. (a) Charge moves from A to B? WA-to-B = (b) Charge moves from A to C? Calculate the work done ON the point charge BY the electric field for each of the following cases. WA-to-C = (c) Charge moves from A to D? WA-to-D= (b) Charge moves from D to C? WD-to-C = -Vo -2Vo J -3V A B D 3V 2V0 Vo OV

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The equipotential contours in a region of space that
contains an electric field are shown in the figure at
evenly spaced voltage intervals, Vo = 110 V.
A point charge, q = 390 μC, is placed in the electric
field and moved from one labeled point to another.
(a) Charge moves from A to B?
WA-to-B
=
(b) Charge moves from A to C?
Calculate the work done ON the point charge BY the electric field for each of the following cases.
WA-to-C =
(c) Charge moves from A to D?
WA-to-D=
(b) Charge moves from D to C?
WD-to-C =
-Vo
-2Vo
J
-3V
A
B
D
3V
2V0
Vo
OV
Transcribed Image Text:The equipotential contours in a region of space that contains an electric field are shown in the figure at evenly spaced voltage intervals, Vo = 110 V. A point charge, q = 390 μC, is placed in the electric field and moved from one labeled point to another. (a) Charge moves from A to B? WA-to-B = (b) Charge moves from A to C? Calculate the work done ON the point charge BY the electric field for each of the following cases. WA-to-C = (c) Charge moves from A to D? WA-to-D= (b) Charge moves from D to C? WD-to-C = -Vo -2Vo J -3V A B D 3V 2V0 Vo OV
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